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Density functional theory investigation of the structure of SO2 and SO3 on Cu(111) and Ni(111)

机译:Cu(111)和Ni(111)上SO2和SO3结构的密度泛函理论研究

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Density functional theory (DFT) slab calculations, mainly using the generalised gradient approximation, have been used to investigate the minimum energy structures of molecular SO2 and SO3 on Cu(111) and Ni(111) surfaces. On Ni(111) the optimal local adsorption structures are in close a2reement with experimental results for both molecular species obtained using the X-ray standing wavefield technique. although for adsorbed SO, the energetic difference between two alternative lateral positions of the lying-down molecule on the surface is marginally significant. On Cu(111) the results for adsorbed SO2, in particular, were sensitive to the DFT functional used in the calculations. but in all cases failed to reproduce the experimentally-established preference for adsorption with the molecular plane perpendicular to the surface. This result is discussed in the context of previously published DFT results for these species adsorbed oil Cu(100). The optimal geometry found for SO3 On Cu(111) is similar to that on Ni(111), providing agreement with experiment regarding the molecular orientation but not the adsorption site. (c) 2006 Elsevier B.V. All rights reserved.
机译:主要使用广义梯度近似的密度泛函理论(DFT)平板计算已用于研究Cu(111)和Ni(111)表面上分子SO2和SO3的最小能量结构。在Ni(111)上,最佳的局部吸附结构与使用X射线驻波场技术获得的两种分子种类的实验结果紧密相关。尽管对于吸附的SO,表面上躺下分子的两个备选横向位置之间的能量差异微不足道。在Cu(111)上,吸附的SO2的结果尤其对计算中使用的DFT函数敏感。但在所有情况下都无法重现实验确定的分子平面垂直于表面的吸附偏好。在先前发布的这些物质吸附油Cu(100)的DFT结果的背景下讨论了此结果。在Cu(111)上发现SO3的最佳几何形状与在Ni(111)上发现的最佳几何形状相似,这与关于分子取向但未吸附位置的实验相符。 (c)2006 Elsevier B.V.保留所有权利。

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